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Three-Dimensional Registration of Magnetic Resonance Image Data to Histological Sections with Model-Based Evaluation

机译:基于模型的评估将磁共振图像数据三维记录到组织切片中

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摘要

We developed a three-dimensional (3D) registration method to align medical scanner data with histological sections. After acquiring 3D medical scanner images, we sliced and photographed the tissue using, a custom apparatus, to obtain a volume of tissue section images. Histological samples from the sections were digitized using a video microscopy system. We aligned the histology and medical images to the reference tissue images using our 3D registration method. We applied the method to correlate in vivo magnetic resonance (MR) and histological measurements for radio-frequency thermal ablation lesions in rabbit thighs. For registration evaluation, we used an ellipsoid model to describe the lesion surfaces. The model surface closely fit the inner (M1) and outer (M2) boundaries of the hyperintense region in MR lesion images, and the boundary of necrosis (H1) in registered histology images. We used the distance between the model surfaces to indicate the 3D registration error. For four experiments, we measured a registration accuracy of 0.96± 0.13 mm (mean±SD) from the absolute distance between the M2 and H1 model surfaces, which compares favorably to the 0.70 mm in-plane MR voxel dimension. This suggests that our registration method provides sufficient spatial correspondence to correlate 3D medical scanner and histology data.
机译:我们开发了一种三维(3D)配准方法,以将医疗扫描仪数据与组织学部分对齐。在获取3D医学扫描仪图像之后,我们使用定制设备对组织进行切片和拍照,以获得一定数量的组织切片图像。使用视频显微镜系统将切片的组织学样品数字化。我们使用3D配准方法将组织学和医学图像与参考组织图像对齐。我们应用了该方法来关联兔大腿射频热消融病变的体内磁共振(MR)和组织学测量结果。对于配准评估,我们使用椭球模型来描述病变表面。模型表面非常适合MR病变图像中高强度区域的内部(M1)和外部(M2)边界,以及已注册的组织学图像中的坏死(H1)边界。我们使用模型表面之间的距离来指示3D配准错误。对于四个实验,我们从M2和H1模型表面之间的绝对距离测得的套准精度为0.96±0.13 mm(平均值±SD),与0.70 mm面内MR体素尺寸相比具有优势。这表明我们的注册方法提供了足够的空间对应关系,以关联3D医学扫描仪和组织学数据。

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